Nuclear track detectors :: design, methods and applications /
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Weitere Verfasser: | , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
New York :
Nova Science Publishers,
©2010.
|
Schriftenreihe: | Electrical engineering developments series.
|
Schlagworte: | |
Online-Zugang: | Volltext |
Beschreibung: | 1 online resource (xii, 275 pages) : illustrations (some color) |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 1614704503 9781614704508 |
Internformat
MARC
LEADER | 00000cam a2200000Ma 4500 | ||
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245 | 0 | 0 | |a Nuclear track detectors : |b design, methods and applications / |c Maksim Sidorov and Oleg Ivanov, editors. |
260 | |a New York : |b Nova Science Publishers, |c ©2010. | ||
300 | |a 1 online resource (xii, 275 pages) : |b illustrations (some color) | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
490 | 1 | |a Electrical engineering developments series | |
504 | |a Includes bibliographical references and index. | ||
588 | 0 | |a Print version record. | |
505 | 0 | |a NUCLEAR TRACK DETECTORS:DESIGN, METHODS AND APPLICATIONS; ELECTRICAL ENGINEERINGDEVELOPMENTS SERIES; CONTENTS; PREFACE; METHODS USING CR-39 PLASTIC NUCLEAR TRACKDETECTORS IN RADIATION RESEARCH; ABSTRACT; 1. INTRODUCTION; 2. CR-39 PLASTIC NUCLEAR TRACK DETECTORS (PNTDS); 2.1. Nuclear Track Detectors; 2.2. Energy Loss Models of Charged Particles; 2.2.1. Ionisation and excitation; 2.2.2. Bremsstrahlung and Cherenkov radiation; 2.2.3. Nuclear interactions; 2.3. Energy Loss Models for Track Formation; 2.3.1 The total ionization energy model; 2.3.2. The primary ionization model. | |
505 | 8 | |a 2.3.3. The restricted energy loss (REL) model2.4. Track Formation in Solid State Nuclear Track Detectors; 2.5. Physical Principles of Radiation Measurement Using CR-39 Detectors; 2.5.1. Operation principles of CR-39 detectors; 2.5.2. Two different approaches to detect charged particles; 2.6. Experimental Procedures for Radiation Research Using CR-39 Detectors; 2.7. Track Etching Mechanisms and Geometry; 2.7.1. Preferential etching along the particle passage; 2.7.2. Etching mechanisms and geometry; A. Normal incidence; B. Incidence at an angle; C. Cone pairs. | |
505 | 8 | |a 2.7.3. Several useful relationshipsA. Etch rate ratio and cone angle; B. Etch rate ratio and ellipse major and minor axes; 2.8. Data recognition and Acquisition by Manual Scan; 3. LET SPECTRUM METHOD USING CR-39 DETECTORS; 3.1. Quantifying the Radiation Hazard; 3.2. LET Spectrum Generation; 3.2.1. Differential and Integral LET Spectrum; 3.2.2. Concept of ecut and its determination; 3.2.3. Dose and dose equivalent; 3.3. LET Calibration for CR-39 Detectors; 3.3.1. Method and approach of LET calibration for CR-39 detectors. | |
505 | 8 | |a 3.3.2. LET calibration for CR-39 detectors in different oxygen environments3.3.3. Results of CR-39 LET calibration; 3.3.4. Comparison of LET calibrations for CR-39 PNTDs; 4. CHARGE SPECTRUM METHOD USING CR-39 DETECTORS; 4.1. Principles of Charge Spectrum Method; 4.1.1. Particle identification by etch rate and range; 4.1.2. Particle identification by etch rate gradient; 4.2. Charge calibration for CR-39 detectors; 4.3. Data Scan and Acquisition; 5. SENSITIVITY FADING OF CR-39 DETECTORS AND CORRECTION; 5.1. Sensitivity Fading of CR-39 Detectors with Long-Term Exposure. | |
505 | 8 | |a 5.2. Experimental Method to Determine Fading Correction Formula5.2.1. Exposures of CR-39 detectors in space; 5.2.2. Data scan and analysis; 5.2.3. Sensitivity fading of CR-39 detectors during long time exposures; 5.2.4. Correction method for the fading of CR-39 sensitivity; 5.2.5. Charge identification for the selected test GCR events; 5.3. Fading Correction Formula and Application; 5.3.1. Fading correction formula; 5.3.2. Comparison of radiation results measured with TEPC and CR-39 PNTDs; 5.4. Conclusion; 6. RADIATION MEASURED WITH CR-39 DETECTORS AT AVIATIONALTITUDES. | |
650 | 0 | |a Nuclear track detectors. |0 http://id.loc.gov/authorities/subjects/sh85093114 | |
650 | 6 | |a Détecteurs de traces (Physique nucléaire) | |
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650 | 7 | |a Nuclear track detectors |2 fast | |
700 | 1 | |a Sidorov, Maksim. | |
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-ocn834603765 |
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adam_text | |
any_adam_object | |
author2 | Sidorov, Maksim Ivanov, Oleg, 1959- |
author2_role | |
author2_variant | m s ms o i oi |
author_GND | http://id.loc.gov/authorities/names/n2009071945 |
author_facet | Sidorov, Maksim Ivanov, Oleg, 1959- |
author_sort | Sidorov, Maksim |
building | Verbundindex |
bvnumber | localFWS |
callnumber-first | Q - Science |
callnumber-label | QC787 |
callnumber-raw | QC787.N83 N83 2010 |
callnumber-search | QC787.N83 N83 2010 |
callnumber-sort | QC 3787 N83 N83 42010 |
callnumber-subject | QC - Physics |
collection | ZDB-4-EBA |
contents | NUCLEAR TRACK DETECTORS:DESIGN, METHODS AND APPLICATIONS; ELECTRICAL ENGINEERINGDEVELOPMENTS SERIES; CONTENTS; PREFACE; METHODS USING CR-39 PLASTIC NUCLEAR TRACKDETECTORS IN RADIATION RESEARCH; ABSTRACT; 1. INTRODUCTION; 2. CR-39 PLASTIC NUCLEAR TRACK DETECTORS (PNTDS); 2.1. Nuclear Track Detectors; 2.2. Energy Loss Models of Charged Particles; 2.2.1. Ionisation and excitation; 2.2.2. Bremsstrahlung and Cherenkov radiation; 2.2.3. Nuclear interactions; 2.3. Energy Loss Models for Track Formation; 2.3.1 The total ionization energy model; 2.3.2. The primary ionization model. 2.3.3. The restricted energy loss (REL) model2.4. Track Formation in Solid State Nuclear Track Detectors; 2.5. Physical Principles of Radiation Measurement Using CR-39 Detectors; 2.5.1. Operation principles of CR-39 detectors; 2.5.2. Two different approaches to detect charged particles; 2.6. Experimental Procedures for Radiation Research Using CR-39 Detectors; 2.7. Track Etching Mechanisms and Geometry; 2.7.1. Preferential etching along the particle passage; 2.7.2. Etching mechanisms and geometry; A. Normal incidence; B. Incidence at an angle; C. Cone pairs. 2.7.3. Several useful relationshipsA. Etch rate ratio and cone angle; B. Etch rate ratio and ellipse major and minor axes; 2.8. Data recognition and Acquisition by Manual Scan; 3. LET SPECTRUM METHOD USING CR-39 DETECTORS; 3.1. Quantifying the Radiation Hazard; 3.2. LET Spectrum Generation; 3.2.1. Differential and Integral LET Spectrum; 3.2.2. Concept of ecut and its determination; 3.2.3. Dose and dose equivalent; 3.3. LET Calibration for CR-39 Detectors; 3.3.1. Method and approach of LET calibration for CR-39 detectors. 3.3.2. LET calibration for CR-39 detectors in different oxygen environments3.3.3. Results of CR-39 LET calibration; 3.3.4. Comparison of LET calibrations for CR-39 PNTDs; 4. CHARGE SPECTRUM METHOD USING CR-39 DETECTORS; 4.1. Principles of Charge Spectrum Method; 4.1.1. Particle identification by etch rate and range; 4.1.2. Particle identification by etch rate gradient; 4.2. Charge calibration for CR-39 detectors; 4.3. Data Scan and Acquisition; 5. SENSITIVITY FADING OF CR-39 DETECTORS AND CORRECTION; 5.1. Sensitivity Fading of CR-39 Detectors with Long-Term Exposure. 5.2. Experimental Method to Determine Fading Correction Formula5.2.1. Exposures of CR-39 detectors in space; 5.2.2. Data scan and analysis; 5.2.3. Sensitivity fading of CR-39 detectors during long time exposures; 5.2.4. Correction method for the fading of CR-39 sensitivity; 5.2.5. Charge identification for the selected test GCR events; 5.3. Fading Correction Formula and Application; 5.3.1. Fading correction formula; 5.3.2. Comparison of radiation results measured with TEPC and CR-39 PNTDs; 5.4. Conclusion; 6. RADIATION MEASURED WITH CR-39 DETECTORS AT AVIATIONALTITUDES. |
ctrlnum | (OCoLC)834603765 |
dewey-full | 539.7/7 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 539 - Modern physics |
dewey-raw | 539.7/7 |
dewey-search | 539.7/7 |
dewey-sort | 3539.7 17 |
dewey-tens | 530 - Physics |
discipline | Physik |
format | Electronic eBook |
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id | ZDB-4-EBA-ocn834603765 |
illustrated | Illustrated |
indexdate | 2024-11-27T13:25:16Z |
institution | BVB |
isbn | 1614704503 9781614704508 |
language | English |
oclc_num | 834603765 |
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publishDate | 2010 |
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series | Electrical engineering developments series. |
series2 | Electrical engineering developments series |
spelling | Nuclear track detectors : design, methods and applications / Maksim Sidorov and Oleg Ivanov, editors. New York : Nova Science Publishers, ©2010. 1 online resource (xii, 275 pages) : illustrations (some color) text txt rdacontent computer c rdamedia online resource cr rdacarrier Electrical engineering developments series Includes bibliographical references and index. Print version record. NUCLEAR TRACK DETECTORS:DESIGN, METHODS AND APPLICATIONS; ELECTRICAL ENGINEERINGDEVELOPMENTS SERIES; CONTENTS; PREFACE; METHODS USING CR-39 PLASTIC NUCLEAR TRACKDETECTORS IN RADIATION RESEARCH; ABSTRACT; 1. INTRODUCTION; 2. CR-39 PLASTIC NUCLEAR TRACK DETECTORS (PNTDS); 2.1. Nuclear Track Detectors; 2.2. Energy Loss Models of Charged Particles; 2.2.1. Ionisation and excitation; 2.2.2. Bremsstrahlung and Cherenkov radiation; 2.2.3. Nuclear interactions; 2.3. Energy Loss Models for Track Formation; 2.3.1 The total ionization energy model; 2.3.2. The primary ionization model. 2.3.3. The restricted energy loss (REL) model2.4. Track Formation in Solid State Nuclear Track Detectors; 2.5. Physical Principles of Radiation Measurement Using CR-39 Detectors; 2.5.1. Operation principles of CR-39 detectors; 2.5.2. Two different approaches to detect charged particles; 2.6. Experimental Procedures for Radiation Research Using CR-39 Detectors; 2.7. Track Etching Mechanisms and Geometry; 2.7.1. Preferential etching along the particle passage; 2.7.2. Etching mechanisms and geometry; A. Normal incidence; B. Incidence at an angle; C. Cone pairs. 2.7.3. Several useful relationshipsA. Etch rate ratio and cone angle; B. Etch rate ratio and ellipse major and minor axes; 2.8. Data recognition and Acquisition by Manual Scan; 3. LET SPECTRUM METHOD USING CR-39 DETECTORS; 3.1. Quantifying the Radiation Hazard; 3.2. LET Spectrum Generation; 3.2.1. Differential and Integral LET Spectrum; 3.2.2. Concept of ecut and its determination; 3.2.3. Dose and dose equivalent; 3.3. LET Calibration for CR-39 Detectors; 3.3.1. Method and approach of LET calibration for CR-39 detectors. 3.3.2. LET calibration for CR-39 detectors in different oxygen environments3.3.3. Results of CR-39 LET calibration; 3.3.4. Comparison of LET calibrations for CR-39 PNTDs; 4. CHARGE SPECTRUM METHOD USING CR-39 DETECTORS; 4.1. Principles of Charge Spectrum Method; 4.1.1. Particle identification by etch rate and range; 4.1.2. Particle identification by etch rate gradient; 4.2. Charge calibration for CR-39 detectors; 4.3. Data Scan and Acquisition; 5. SENSITIVITY FADING OF CR-39 DETECTORS AND CORRECTION; 5.1. Sensitivity Fading of CR-39 Detectors with Long-Term Exposure. 5.2. Experimental Method to Determine Fading Correction Formula5.2.1. Exposures of CR-39 detectors in space; 5.2.2. Data scan and analysis; 5.2.3. Sensitivity fading of CR-39 detectors during long time exposures; 5.2.4. Correction method for the fading of CR-39 sensitivity; 5.2.5. Charge identification for the selected test GCR events; 5.3. Fading Correction Formula and Application; 5.3.1. Fading correction formula; 5.3.2. Comparison of radiation results measured with TEPC and CR-39 PNTDs; 5.4. Conclusion; 6. RADIATION MEASURED WITH CR-39 DETECTORS AT AVIATIONALTITUDES. Nuclear track detectors. http://id.loc.gov/authorities/subjects/sh85093114 Détecteurs de traces (Physique nucléaire) SCIENCE Physics Nuclear. bisacsh Nuclear track detectors fast Sidorov, Maksim. Ivanov, Oleg, 1959- https://id.oclc.org/worldcat/entity/E39PCjydKrrv8px6pvRgJFCjfm http://id.loc.gov/authorities/names/n2009071945 has work: Nuclear track detectors (Text) https://id.oclc.org/worldcat/entity/E39PCGpYD9g4dpHRQB6jBt7Mbm https://id.oclc.org/worldcat/ontology/hasWork Print version: 9781608768264 1608768260 (DLC) 2009043823 Electrical engineering developments series. http://id.loc.gov/authorities/names/no2009203439 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=540183 Volltext |
spellingShingle | Nuclear track detectors : design, methods and applications / Electrical engineering developments series. NUCLEAR TRACK DETECTORS:DESIGN, METHODS AND APPLICATIONS; ELECTRICAL ENGINEERINGDEVELOPMENTS SERIES; CONTENTS; PREFACE; METHODS USING CR-39 PLASTIC NUCLEAR TRACKDETECTORS IN RADIATION RESEARCH; ABSTRACT; 1. INTRODUCTION; 2. CR-39 PLASTIC NUCLEAR TRACK DETECTORS (PNTDS); 2.1. Nuclear Track Detectors; 2.2. Energy Loss Models of Charged Particles; 2.2.1. Ionisation and excitation; 2.2.2. Bremsstrahlung and Cherenkov radiation; 2.2.3. Nuclear interactions; 2.3. Energy Loss Models for Track Formation; 2.3.1 The total ionization energy model; 2.3.2. The primary ionization model. 2.3.3. The restricted energy loss (REL) model2.4. Track Formation in Solid State Nuclear Track Detectors; 2.5. Physical Principles of Radiation Measurement Using CR-39 Detectors; 2.5.1. Operation principles of CR-39 detectors; 2.5.2. Two different approaches to detect charged particles; 2.6. Experimental Procedures for Radiation Research Using CR-39 Detectors; 2.7. Track Etching Mechanisms and Geometry; 2.7.1. Preferential etching along the particle passage; 2.7.2. Etching mechanisms and geometry; A. Normal incidence; B. Incidence at an angle; C. Cone pairs. 2.7.3. Several useful relationshipsA. Etch rate ratio and cone angle; B. Etch rate ratio and ellipse major and minor axes; 2.8. Data recognition and Acquisition by Manual Scan; 3. LET SPECTRUM METHOD USING CR-39 DETECTORS; 3.1. Quantifying the Radiation Hazard; 3.2. LET Spectrum Generation; 3.2.1. Differential and Integral LET Spectrum; 3.2.2. Concept of ecut and its determination; 3.2.3. Dose and dose equivalent; 3.3. LET Calibration for CR-39 Detectors; 3.3.1. Method and approach of LET calibration for CR-39 detectors. 3.3.2. LET calibration for CR-39 detectors in different oxygen environments3.3.3. Results of CR-39 LET calibration; 3.3.4. Comparison of LET calibrations for CR-39 PNTDs; 4. CHARGE SPECTRUM METHOD USING CR-39 DETECTORS; 4.1. Principles of Charge Spectrum Method; 4.1.1. Particle identification by etch rate and range; 4.1.2. Particle identification by etch rate gradient; 4.2. Charge calibration for CR-39 detectors; 4.3. Data Scan and Acquisition; 5. SENSITIVITY FADING OF CR-39 DETECTORS AND CORRECTION; 5.1. Sensitivity Fading of CR-39 Detectors with Long-Term Exposure. 5.2. Experimental Method to Determine Fading Correction Formula5.2.1. Exposures of CR-39 detectors in space; 5.2.2. Data scan and analysis; 5.2.3. Sensitivity fading of CR-39 detectors during long time exposures; 5.2.4. Correction method for the fading of CR-39 sensitivity; 5.2.5. Charge identification for the selected test GCR events; 5.3. Fading Correction Formula and Application; 5.3.1. Fading correction formula; 5.3.2. Comparison of radiation results measured with TEPC and CR-39 PNTDs; 5.4. Conclusion; 6. RADIATION MEASURED WITH CR-39 DETECTORS AT AVIATIONALTITUDES. Nuclear track detectors. http://id.loc.gov/authorities/subjects/sh85093114 Détecteurs de traces (Physique nucléaire) SCIENCE Physics Nuclear. bisacsh Nuclear track detectors fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85093114 |
title | Nuclear track detectors : design, methods and applications / |
title_auth | Nuclear track detectors : design, methods and applications / |
title_exact_search | Nuclear track detectors : design, methods and applications / |
title_full | Nuclear track detectors : design, methods and applications / Maksim Sidorov and Oleg Ivanov, editors. |
title_fullStr | Nuclear track detectors : design, methods and applications / Maksim Sidorov and Oleg Ivanov, editors. |
title_full_unstemmed | Nuclear track detectors : design, methods and applications / Maksim Sidorov and Oleg Ivanov, editors. |
title_short | Nuclear track detectors : |
title_sort | nuclear track detectors design methods and applications |
title_sub | design, methods and applications / |
topic | Nuclear track detectors. http://id.loc.gov/authorities/subjects/sh85093114 Détecteurs de traces (Physique nucléaire) SCIENCE Physics Nuclear. bisacsh Nuclear track detectors fast |
topic_facet | Nuclear track detectors. Détecteurs de traces (Physique nucléaire) SCIENCE Physics Nuclear. Nuclear track detectors |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=540183 |
work_keys_str_mv | AT sidorovmaksim nucleartrackdetectorsdesignmethodsandapplications AT ivanovoleg nucleartrackdetectorsdesignmethodsandapplications |